Kumagai Akiko, Dunphy William G
Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125.
Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125
Mol Biol Cell. 2017 Nov 1;28(22):2998-3012. doi: 10.1091/mbc.E17-07-0448. Epub 2017 Sep 6.
Treslin, which is essential for incorporation of Cdc45 into the replicative helicase, possesses a partner called MTBP (Mdm2-binding protein). We have analyzed and human MTBP to assess its role in DNA replication. Depletion of MTBP from egg extracts, which also removes Treslin, abolishes DNA replication. These extracts be can rescued with recombinant Treslin-MTBP but not Treslin or MTBP alone. Thus, Treslin-MTBP is collectively necessary for replication. We have identified a C-terminal region of MTBP (the CTM domain) that binds efficiently to both double-stranded DNA and G-quadruplex (G4) DNA. This domain also exhibits homology with budding yeast Sld7. Mutants of MTBP without a functional CTM domain are defective for DNA replication in egg extracts. These mutants display an impaired localization to chromatin and the inability to support loading of Cdc45. Human cells harboring such a mutant also display severe S-phase defects. Thus, the CTM domain of MTBP plays a critical role in localizing Treslin-MTBP to the replication apparatus for initiation.
Treslin对Cdc45整合到复制解旋酶中至关重要,它有一个名为MTBP(Mdm2结合蛋白)的伙伴。我们分析了人类MTBP以评估其在DNA复制中的作用。从卵提取物中去除MTBP(这也会去除Treslin)会导致DNA复制停止。这些提取物可用重组Treslin-MTBP挽救,但单独使用Treslin或MTBP则无法挽救。因此,Treslin-MTBP对复制是共同必需的。我们鉴定出MTBP的一个C端区域(CTM结构域),它能有效结合双链DNA和G-四链体(G4)DNA。该结构域也与芽殖酵母Sld7具有同源性。没有功能性CTM结构域的MTBP突变体在卵提取物中进行DNA复制时存在缺陷。这些突变体在染色质上的定位受损,并且无法支持Cdc45的加载。携带这种突变体的人类细胞也表现出严重的S期缺陷。因此,MTBP的CTM结构域在将Treslin-MTBP定位到复制起始装置中起着关键作用。